Gas liquid equilibrium prediction of system (CO2-aqueous ethanol) at moderate pressure and different temperatures using PR-EOS
Author(s) -
Arkan J. Hadi,
Ghassan J. Hadi,
Ghazi Faisal Najmuldeen,
Iqbal Ahmed,
S. F. Hasany
Publication year - 2012
Publication title -
chemical industry and chemical engineering quarterly
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.189
H-Index - 26
eISSN - 2217-7434
pISSN - 1451-9372
DOI - 10.2298/ciceq120324067h
Subject(s) - thermodynamics , equation of state , solubility , mixing (physics) , aqueous solution , vapor–liquid equilibrium , bar (unit) , chemistry , phase equilibrium , carbon dioxide , materials science , phase (matter) , organic chemistry , physics , quantum mechanics , meteorology
One of the most important design considerations which should not be ignored during the equipment designing for some industrial purpose is vapour-liquid equilibrium (VLE). Thus, in chemical engineering, the first step is the computation of VLE properties of materials by employing Equation of state (EOS). In this study, we have used a thermodynamic model which was established for binary system of carbon dioxide (1)-(2) solubility of CO2 in aqueous ethanol and it was employed to estimate the gas-liquid equilibrium at moderate pressures (till 6 bar) and varying temperatures (288 K to 323 K). Peng-Robinson EOS was employed to determine the VLE properties. Mixing rules such as vanderWaals and quadratic mixing rules were also used for the determination of ethanol-water mixture critical parameters which entails the pseudo-critical method as one component and results obtained from this study were similar to the ones reported in recent literature for empirical phase equilibrium studies
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